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Preparation of poly (DMAEM)-cross linked pregelled starch graft copolymer and its application in waste water treatments

机译:聚(DMAEM)交联预胶淀粉接枝共聚物的制备及其在废水处理中的应用

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摘要

Pregelled starch (PS) was first cross linked with epichlorohydrin (ECH) to obtain insoluble cross-linked pregelled starch (CPS). The latter was graft co-polymerized with different amounts of dimethylaminoethyl methacrylate (DMAEM) using potassium permanganate/sulphuric acid redox system. This was done to obtain six levels of poly (DMAEM)-cross linked pregelled starch graft copolymers (PDMAEM-CPS) having different graft yields (expressed as N%) with increasing order and designated as (PDMAEMCPS 1 to PDMAEMCPS 6). The latter copolymers were dispersed in aqueous solution of heavy metal ions Cu (II) ions and filtered to form polymer-metal ions complex. Different factors affecting the heavy metal ions removal such as pH, extent of grafting, treatment time and starch dose were studied in detail. It was found from the obtained results that; the residual metal ions removal from their aqueous solutions increased with (a) increasing the extent of grafting of PDMAEMCPS i.e. from PDMAEMCPS 1 to PDMAEMCPS 6; (b) increasing the pH of the metal ions solution complex from 1 to 8; (c) increasing the starch dosage from 0.25 to 2.0% (w/v), then leveled off thereafter and (d) increasing the time of the reaction up to 20min then leveled off after that. On the other hand, Pb, Cd and Hg ions were also removed from their solutions with different extent. Furthermore, the prepared copolymer could be recovered by washing the metal ions from the complex with weak acid 1 N HNO3 (pH 2) and the metal-binding activity of the starch was slightly reduced by this process. Finally, the ability of PDMAEMCPS to remove three types of acid dyes from their solutions was also reported.
机译:首先将预凝胶淀粉(PS)与环氧氯丙烷(ECH)交联以获得不溶性交联预凝胶淀粉(CPS)。使用高锰酸钾/硫酸氧化还原体系将后者与不同量的甲基丙烯酸二甲基氨基乙酯(DMAEM)接枝共聚。这样做是为了获得六种水平的聚(DMAEM)交联的预胶凝淀粉接枝共聚物(PDMAEM-CPS),具有不同的接枝收率(表示为N%),且顺序递增,命名为(PDMAEMCPS 1至PDMAEMCPS 6)。将后一种共聚物分散在重金属离子Cu(II)离子的水溶液中,过滤以形成聚合物-金属离子络合物。详细研究了影响重金属离子去除的不同因素,例如pH,接枝程度,处理时间和淀粉用量。从获得的结果中发现: (a)增加PDMAEMCPS的接枝程度,即从PDMAEMCPS 1到PDMAEMCPS 6,从水溶液中去除的残留金属离子增加; (b)将金属离子溶液络合物的pH从1增加到8; (c)将淀粉剂量从0.25%增加至2.0%(w / v),然后稳定下来;(d)将反应时间增加至20分钟,然后稳定下来。另一方面,Pb,Cd和Hg离子也从溶液中去除的程度不同。此外,可以通过用弱酸1 N HNO3(pH 2)从络合物中洗涤金属离子来回收制备的共聚物,并且该方法会略微降低淀粉的金属结合活性。最后,还报道了PDMAEMCPS从其溶液中去除三种类型的酸性染料的能力。

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